Raturi, G.; Sharma, Y.; Mandlik, R.; Kumawat, S.; Rana, N.; Dhar, H.; Tripathi, D.K.; Sonah, H.; Sharma, T.R.; Deshmukh, R.
Genomic Landscape Highlights Molecular Mechanisms Involved in Silicate Solubilization, Stress Tolerance, and Potential Growth-Promoting Activity of Bacterium Enterobacter sp. LR6. Cells 2022, 11, 3622.
https://doi.org/10.3390/cells11223622
AMA Style
Raturi G, Sharma Y, Mandlik R, Kumawat S, Rana N, Dhar H, Tripathi DK, Sonah H, Sharma TR, Deshmukh R.
Genomic Landscape Highlights Molecular Mechanisms Involved in Silicate Solubilization, Stress Tolerance, and Potential Growth-Promoting Activity of Bacterium Enterobacter sp. LR6. Cells. 2022; 11(22):3622.
https://doi.org/10.3390/cells11223622
Chicago/Turabian Style
Raturi, Gaurav, Yogesh Sharma, Rushil Mandlik, Surbhi Kumawat, Nitika Rana, Hena Dhar, Durgesh Kumar Tripathi, Humira Sonah, Tilak Raj Sharma, and Rupesh Deshmukh.
2022. "Genomic Landscape Highlights Molecular Mechanisms Involved in Silicate Solubilization, Stress Tolerance, and Potential Growth-Promoting Activity of Bacterium Enterobacter sp. LR6" Cells 11, no. 22: 3622.
https://doi.org/10.3390/cells11223622
APA Style
Raturi, G., Sharma, Y., Mandlik, R., Kumawat, S., Rana, N., Dhar, H., Tripathi, D. K., Sonah, H., Sharma, T. R., & Deshmukh, R.
(2022). Genomic Landscape Highlights Molecular Mechanisms Involved in Silicate Solubilization, Stress Tolerance, and Potential Growth-Promoting Activity of Bacterium Enterobacter sp. LR6. Cells, 11(22), 3622.
https://doi.org/10.3390/cells11223622